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Organic-silica hybrid monolithic sorbents for sample preparation techniques: A review on advances in synthesis, characterization, and applications

Full text
Author(s):
Souza, Israel D. ; Queiroz, Maria Eugenia C.
Total Authors: 2
Document type: Journal article
Source: Journal of Chromatography A; v. 1713, p. 13-pg., 2023-11-23.
Abstract

Organic-silica hybrid monolithic materials have attracted considerable attention as potential stationary phases in separation science. These materials combine the advantages of organic polymer and silica-based monoliths, including easy preparation, lower back pressure, high permeability, excellent mechanical strength, thermal stability, and tunable surface chemistry with high surface area and selectivity. The outstanding chromatographic efficiency as stationary phase of hybrid monolithic capillary columns for capillary liquid chromatography and capillary electrochromatography has been reported in many papers. Organic-silica hybrid monolithic materials have also been extensively used in the field of sample preparation. Owing to their surface functionalities, these porous sorbents offer unique selectivity for pre-concentration of different analytes in the most complex matrixes by fast dynamic transport. These sorbents not only improve the analytical method sensitivity, but also introduce novelties in terms of extraction devices and instrument coupling strategies. The current review covers the period spanning from 2017 to 2023 and describes the properties of organic-inorganic hybrid monolithic materials, the present status of this technology and summarizes recent developments in their use as innovative sorbents for microextraction sample preparation techniques (solid phase microextraction with pipette tip, offline in-tube SPME, in-tube SPME online with LC, and in-tube SPME directly coupled with mass spectrometry). Aspects such as the synthesis methods (sol-gel process, one-pot approach, and polyhedral oligomeric silsesquioxanes-based procedure), characterization techniques, and strategies to improve extraction efficiency in various applications in different areas (environmental, food, bioanalysis, and proteomics) are also discussed. (AU)

FAPESP's process: 19/19485-0 - Development of nitinol fiber chemically coated with zwitterionic polymeric ionic liquids for determination of beta-amyloids in plasma samples from patients with Alzheimer's disease by direct coupling fiber-in-tube SPME and MS/MS
Grantee:Israel Donizeti de Souza
Support Opportunities: Scholarships in Brazil - Post-Doctoral
FAPESP's process: 20/00126-8 - Development of the methods of the microextraction hyphenated with LC-MS/MS or directly to MS/MS for the determination of biomarkers in biological samples of patient or rats with neurodegenerative diseases
Grantee:Maria Eugênia Queiroz Nassur
Support Opportunities: Regular Research Grants
FAPESP's process: 17/02147-0 - Single drop chromatography and its coupling to mass spectrometry: instrumental strategies, development of materials, automation and analytical applications
Grantee:Fernando Mauro Lanças
Support Opportunities: Research Projects - Thematic Grants